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March 5, 2026Toxics0 citationsOpen Access

The Toxic Effects of Hydrated Cement, Autoclaved Aerated Concrete, and Demolition Dusts on the Respiratory System in Rats

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MKMurat KılıçNGNurcan GokturkNVN Vardi

Key Points

  • This research aims to evaluate the toxicity of hydrated cement dust, autoclaved aerated concrete dust, and demolition dust on the respiratory system in rats.
  • Characterized dust particle properties using XRD analysis.
  • Divided 48 female rats into four groups: hydrated cement dust, autoclaved aerated concrete dust, demolition dust, and control.
  • Administered respective dust suspensions intranasally over a 15-day period.
  • Analyzed bronchoalveolar lavage fluid, blood, and lung tissues for physiological changes.
  • Significant increase in emphysema observed in hydrated cement and autoclaved aerated concrete groups.
  • Inflammation and alveolar wall thickening noted in hydrated cement and demolition dust groups.
  • Goblet cell hyperplasia found only in the hydrated cement group.
  • Detected increases in CD68+ macrophages and TGF-β in the demolition dust group indicating a fibrotic response.
  • Akt/NF-κB pathway effects noted, with increased apoptosis-related proteins and decreased Bcl-xl levels.

Abstract

Background: Following the earthquakes that occurred in Turkey in 2023, the resulting demolition dust (DD) negatively impacted air quality and led to an increase in respiratory diseases. Although the harmful effects of crystalline and amorphous silica are known, the effects of hydrated cement dust (HCD), autoclaved aerated concrete dust (AACD), and DD on the lungs have not been sufficiently investigated. This rat study presents the first experimental data on the toxicity of these dusts. Methods: In the study, the structural properties of dust particles smaller than 5 µm were characterized using XRD analysis. Subsequently, 48 female rats were divided into four groups: HCD, AACD, DD, and control. The relevant dust suspensions were administered to the experimental groups, and physiological saline was administered to the control group intranasally a total of five times over a 15-day period, once every 3 days. Subsequently, bronchoalveolar lavage fluid, blood, and lung tissues were analyzed. Results: An increase in emphysema was observed in all exposure groups, and this increase was significant in the AAC and HC groups. Inflammation and alveolar wall thickness increased in the HC and DD groups. Goblet cell hyperplasia was detected only in the HC group; increases in CD68+ macrophages and TGF-β, as well as elevated hydroxyproline, were detected only in the DD group and supported the fibrotic response (p < 0.05). Neutrophil increase was specific to the AAC group. In all exposure groups, Akt/NF-κB pathway proteins, caspase-9, and MPO levels increased, while Bcl-xl levels decreased (p < 0.05). The findings indicate that the examined dusts trigger inflammation and apoptosis. Conclusion: Exposure to HCD, AACD, and DD causes lung damage by modulating the Akt/NF-κB signaling cascade; it enhances the apoptotic process through Bcl-xl suppression and caspase-9 increase. DD also induces a marked fibrotic response.

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Cite This Study

Kılıç et al. (2026) studied this question.

synapsesocial.com/papers/69a91dd2d6127c7a504c1160https://doi.org/10.3390/toxics14030218
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